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Partition of the workspace for machine tool based on position-dependent modal energy distribution and clustering algorithm

机译:基于位置依赖模态能量分布和聚类算法的机床工作空间分区

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摘要

The natural frequencies and damping ratios of machine tool structure vary with the change of the machining position in the machining space. When the stiffness distribution of the whole machine structure is not uniform, some position change will further lead to the change of weak components of the structure. In order to detail the position-dependent dynamics of the machine tool, the change of structure dynamics caused by the change of position is divided into two types: one is both the modal parameters and structural weakness change, and the other is that only the modal parameters change, while the weakness remains unchanged. The entire workspace can be divided into different subareas according to whether the weakness changes. In the same subarea, only the modal parameters change and the weakness remains unchanged. In the different subareas, the weakness of whole machine tool structure changes. The change of structural weakness influences the vibration characteristics of the machine tool and the dominant modes of vibration. Hence, the partition of machining space according to the change of structural weakness is helpful to more accurately analyze the position-dependent dynamics and vibration characteristics of the machine tool. Firstly, this paper presents the method of modal energy distribution to analysis position-dependent structural weakness and the principle of the clustering to divide the workspace. A simulation example is given to verify the effectiveness of the method. Then, the clustering partition of the workspace for a gantry machining center is conducted with the presented method. Finally, the cutting tests are performed to verify the change of the vibration dominant mode of machine tool at different subareas.
机译:固有频率和机床结构的阻尼比与在加工空间中的加工位置的变化而变化。当整个机器结构的刚度分布是不均匀的,有的位置变化将进一步导致所述结构的弱分量的变化。为了详细地机床的依赖于位置的动态,引起的位置变化的结构动力学的变化分为两种类型:一种是模态参数和结构弱点变化两者,并且另一种是,仅模态参数变化,而无力保持不变。整个工作区可以根据弱点是否改变被划分成不同的子区。在同一个分区中,只有模态参数发生变化,无力保持不变。在不同的分区,整个机床结构的弱点变化。结构弱点的变化影响机床的振动特性及振动的主导模式。因此,根据结构弱点的变化加工空间的分区有利于更精确地分析依赖于位置的动态和机床的振动特性。首先,提出一种模态的能量分布到分析依赖于位置的结构弱点并且聚类来划分工作空间的原理的方法。仿真例子被提供给验证了该方法的有效性。然后,工作空间用于龙门加工中心的聚类分区与所提出的方法进行的。最后,将切削试验被执行以验证机床中的不同的子区的主导振动模式的改变。

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